Performance Analysis of Cylindrical Shielding in Underground Cables

The shielding efficiency of cylindrical shields for three phase underground cable is investigated for several shields material using finite element method (FEM). This FEM model takes into account the nonlinear hysteretic behavior for ferromagnetic material in the shield. The shields are cylindrical...

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Main Authors: Nurettin Umurkan, Selami Kesler, Selim Köroğlu
Format: Article
Language:English
Published: Pamukkale University 2015-04-01
Series:Pamukkale University Journal of Engineering Sciences
Subjects:
-
Online Access:https://dergipark.org.tr/tr/pub/pajes/issue/20557/219091
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spelling doaj-b7774e6a50664943a4633aaf5abc909e2021-04-04T13:24:45ZengPamukkale UniversityPamukkale University Journal of Engineering Sciences1300-70092147-58812015-04-012124146218Performance Analysis of Cylindrical Shielding in Underground CablesNurettin UmurkanSelami KeslerSelim KöroğluThe shielding efficiency of cylindrical shields for three phase underground cable is investigated for several shields material using finite element method (FEM). This FEM model takes into account the nonlinear hysteretic behavior for ferromagnetic material in the shield. The shields are cylindrical shaped and the power cables are positioned in flat configuration. The shielding efficiency is compared for shields with the same geometry but several shielding materials with nonlinear hysteretic behavior (Magnetil and DX52, both from Arcelor-Mittal firm) and a non-ferromagnetic and electrically conducting shielding material (Aluminium). The paper investigates the influence of several parameters on shielding efficiency: the size of the shield radius, the current amplitude in the cable and the thickness of the shield. Magnetil shield material is the best in terms of shielding performance. The numerical models are validated with experimental results for without shield.https://dergipark.org.tr/tr/pub/pajes/issue/20557/219091-finite element method magnetic shielding cylindrical shieldmanyetik ekranlama silindirik ekran sonlu elemanlar yöntemi
collection DOAJ
language English
format Article
sources DOAJ
author Nurettin Umurkan
Selami Kesler
Selim Köroğlu
spellingShingle Nurettin Umurkan
Selami Kesler
Selim Köroğlu
Performance Analysis of Cylindrical Shielding in Underground Cables
Pamukkale University Journal of Engineering Sciences
-
finite element method magnetic shielding
cylindrical shield
manyetik ekranlama
silindirik ekran
sonlu elemanlar yöntemi
author_facet Nurettin Umurkan
Selami Kesler
Selim Köroğlu
author_sort Nurettin Umurkan
title Performance Analysis of Cylindrical Shielding in Underground Cables
title_short Performance Analysis of Cylindrical Shielding in Underground Cables
title_full Performance Analysis of Cylindrical Shielding in Underground Cables
title_fullStr Performance Analysis of Cylindrical Shielding in Underground Cables
title_full_unstemmed Performance Analysis of Cylindrical Shielding in Underground Cables
title_sort performance analysis of cylindrical shielding in underground cables
publisher Pamukkale University
series Pamukkale University Journal of Engineering Sciences
issn 1300-7009
2147-5881
publishDate 2015-04-01
description The shielding efficiency of cylindrical shields for three phase underground cable is investigated for several shields material using finite element method (FEM). This FEM model takes into account the nonlinear hysteretic behavior for ferromagnetic material in the shield. The shields are cylindrical shaped and the power cables are positioned in flat configuration. The shielding efficiency is compared for shields with the same geometry but several shielding materials with nonlinear hysteretic behavior (Magnetil and DX52, both from Arcelor-Mittal firm) and a non-ferromagnetic and electrically conducting shielding material (Aluminium). The paper investigates the influence of several parameters on shielding efficiency: the size of the shield radius, the current amplitude in the cable and the thickness of the shield. Magnetil shield material is the best in terms of shielding performance. The numerical models are validated with experimental results for without shield.
topic -
finite element method magnetic shielding
cylindrical shield
manyetik ekranlama
silindirik ekran
sonlu elemanlar yöntemi
url https://dergipark.org.tr/tr/pub/pajes/issue/20557/219091
work_keys_str_mv AT nurettinumurkan performanceanalysisofcylindricalshieldinginundergroundcables
AT selamikesler performanceanalysisofcylindricalshieldinginundergroundcables
AT selimkoroglu performanceanalysisofcylindricalshieldinginundergroundcables
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